DESIGN AND DRAG REDUCTION PERFORMANCE ANALYSIS OF A POTATO HARVEST SHOVEL BASED ON THE SURFACE TEXTURE CHARACTERISTICS OF PANGOLIN SCALE

IF 0.6 Q4 AGRICULTURAL ENGINEERING
Ping Zhao, Tiankuo Yu, Guo-fa Xu, Ruijin Guo, He Li, Hongfei Xu, Tianci Jin, Dong Ji
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引用次数: 0

Abstract

Taking into account the physicochemical properties of soil and the complexity of adhesion interface, how to improve the soil adhesion on the mechanical surface is a crucial technical issue. In order to lower the increasing resistance caused by soil adhesion on the surface of a digging shovel in potato harvesting, a potato digging shovel with a non-smooth surface structure was designed based on bionics theory. Based on testing physical and mechanical properties of soil, a soil groove model corresponding to soil physical properties and particle model physical properties was established through a combination of simulation and physical tests, and a simulation test for evaluating the drag reduction performance was conducted. The simulation comparison test results show that the performance of the bionic digging shovel is better than that of the traditional potato digging shovel, regardless of whether the broken soil rate or the working resistance is reduced, and the soil adhered to the mechanical surface can be effectively reduced by 93.3%. The research results can provide ideas and methods for solving the adhesion problem between machinery and soil.
基于穿山甲鳞片表面纹理特征的马铃薯收获铲设计及减阻性能分析
考虑到土壤的物理化学性质和粘附界面的复杂性,如何提高土壤在机械表面的粘附力是一个关键的技术问题。为了降低马铃薯收获过程中挖掘铲表面因土壤粘附而产生的阻力增加,基于仿生学理论,设计了一种表面结构不光滑的马铃薯挖掘铲。在测试土壤物理力学性质的基础上,通过模拟与物理试验相结合的方法,建立了与土壤物理性质和颗粒模型物理性质相对应的土壤沟槽模型,并进行了减阻性能评价的模拟试验。仿真对比试验结果表明,无论是降低破土率还是降低工作阻力,仿生挖铲的性能都优于传统的马铃薯挖铲,研究结果可以为解决机械与土壤的粘附问题提供思路和方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
INMATEH-Agricultural Engineering
INMATEH-Agricultural Engineering AGRICULTURAL ENGINEERING-
CiteScore
1.30
自引率
57.10%
发文量
98
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